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针对FDA标准喷管模型血流动力学特性的离体模拟实验研究

XU Kewei GAO Qi WAN Min ZHANG Ke

实验流体力学2025,Vol.39Issue(6):1-7,7.
实验流体力学2025,Vol.39Issue(6):1-7,7.DOI:10.11729/syltlx20230146

针对FDA标准喷管模型血流动力学特性的离体模拟实验研究

In vitro experimental simulation study of the hemodynamics based on the FDA benchmark model

XU Kewei 1GAO Qi 1WAN Min 2ZHANG Ke2

作者信息

  • 1. School of Aeronautics and Astronautics,Zhejiang University,Hangzhou 310027,China
  • 2. Shandong Institute of Medical Device and Pharmaceutical Packaging Inspection,Jinan 250101,China
  • 折叠

摘要

Abstract

In order to study the hemodynamics of the coronary artery in vitro and to understand the mechanism of cardiovascular disease from the perspective of fluid mechanics,a mock circulatory loop with systemic circulation and coronary circulation was constructed.Combined with a variety of fluid measurement techniques,the hemodynamics of the benchmark nozzle model proposed by Food and Drug Administration(FDA)was studied in vitro under the condition of coronary flow.The location of thrombus in the nozzle model was qualitatively predicted by the platelet adhesion emulation technique using fluorescent particles.The flow field inside the nozzle model was captured by particle image velocimetry(PIV),and the relationship between the thrombus formation and hemodynamics at the corresponding location was quantitatively analyzed.The results show that fluorescent particles are easy to adhere to the wall of the model near the flow structure of the backward-facing step,and the flow field data show that the thrombus formation location is related to the low velocity region and reflux near the wall.In vitro platelet adhesion emulation and hemodynamic research can provide references for coronary thrombotic investigation and related medical device development.

关键词

体外模拟循环回路/FDA标准喷管模型/血流动力学/血栓/PIV

Key words

mock circulatory loop/FDA benchmark model/hemodynamics/thrombus/PIV

分类

数理科学

引用本文复制引用

XU Kewei,GAO Qi,WAN Min,ZHANG Ke..针对FDA标准喷管模型血流动力学特性的离体模拟实验研究[J].实验流体力学,2025,39(6):1-7,7.

基金项目

国家自然科学基金项目(12072320) (12072320)

实验流体力学

OA北大核心

1672-9897

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